School of Chemistry and Molecular Biosciences, The University of Queensland, St Lucia, QLD, 4072, Australia.
Centre for Biopharmaceutical Innovation, Australian Institute for Bioengineering and Nanotechnology, The University of Queensland, St Lucia, QLD, 4072, Australia.
Glycoconj J. 2020 Aug;37(4):471-483. doi: 10.1007/s10719-020-09922-2. Epub 2020 May 6.
Human Factor IX is a highly post-translationally modified protein that is an important clotting factor in the blood coagulation cascade. Functional deficiencies in Factor IX result in the bleeding disorder haemophilia B, which is treated with plasma-derived or recombinant Factor IX concentrates. Here, we investigated the post-translational modifications of human serum-derived Factor IX and report previously undescribed O-linked monosaccharide compositions at serine 141 and a novel site of glycosylation. At serine 141 we observed two monosaccharide compositions, with HexNAcHexNeuAc dominant and a low level of HexNAcHexNeuAc. This O-linked site lies N-terminal to the first cleavage site for the activation peptide, an important region of the protein that is removed to activate Factor IX. The novel site is an N-linked site in the serine protease domain with low occupancy in a non-canonical consensus motif at asparagine 258, observed with a HexNAcHexNeuAc monosaccharide composition attached. This is the first reported instance of a site of modification in the serine protease domain. The description of these glycosylation events provides a basis for future functional studies and contributes to structural characterisation of native Factor IX for the production of effective therapeutic biosimilars and biobetters.
人凝血因子 IX 是一种高度翻译后修饰的蛋白质,是血液凝血级联反应中的重要凝血因子。因子 IX 功能缺陷会导致出血性疾病乙型血友病,该病可通过血浆衍生或重组因子 IX 浓缩物治疗。在这里,我们研究了人血清来源的因子 IX 的翻译后修饰,并报告了以前未描述的丝氨酸 141 处的 O-连接单糖组成和一个新的糖基化位点。在丝氨酸 141 处,我们观察到两种单糖组成,其中 HexNAcHexNeuAc 占主导地位,且 HexNAcHexNeuAc 的水平较低。该 O-连接位点位于激活肽的第一个切割位点的 N 端,该蛋白的这一重要区域在激活因子 IX 时被去除。该新位点是丝氨酸蛋白酶结构域中的一个 N-连接位点,在天冬酰胺 258 处的非典型共识基序中低占据,观察到连接有 HexNAcHexNeuAc 单糖组成。这是在丝氨酸蛋白酶结构域中修饰位点的首次报道。这些糖基化事件的描述为未来的功能研究提供了基础,并为有效治疗性生物类似物和生物改良剂的生产提供了对天然因子 IX 结构特征的贡献。